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Improved electric heating characteristics of CNT-embedded polymeric composites with an addition of silica aerogel

机译:通过添加二氧化硅气凝胶,改善CNT嵌入式聚合物复合材料的电加热特性

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In the present study, CNT-embedded electric heating composites were fabricated and the effects of silica aerogel addition on the electric heating capabilities and heat-induced electrical stability were examined. Silica aerogel at levels of 0%, 0.5%, and 1.0% by mass of polymer were incorporated into the polymeric composites incorporating 4% CNT. The fabrication details, tunneling-induced electrical characteristics, and electric heating capabilities during cyclic and long-term heating conditions were reported. The electric heating test results were discussed in terms of the SEM observations, thermal images taken during the heating process, and schematic descriptions of the heating process. The test results showed that the incorporating silica aerogel could reduce the redistribution of the individual CNT particles, improving the electric heating capabilities including the heat generation stability and the heat-induced electrical stability during the heating process. Moreover, incorporating silica aerogel increased the cooling time, and improving the heat-storage capability related to the heating efficiency. Thus, it can be concluded that the silica aerogel addition has clear potential to improve the electric heating capability and heat-induced electrical stability of CNT-embedded electric heating composites.
机译:在本研究中,研究了CNT嵌入的电加热复合材料,检查了二氧化硅气凝胶对电加热能力和热诱导的电稳定性的影响。将二氧化硅气凝胶含量为0%,0.5%和1.0质量%的聚合物,掺入聚合物复合材料中,其包含4%CNT。报道了在循环和长期加热条件下的制造细节,隧道诱导的电特性和电加热能力。在SEM观察结果中讨论了电加热测试结果,在加热过程中拍摄的热图像,以及加热过程的示意性描述。测试结果表明,掺入的二氧化硅气凝胶可以减少单个CNT颗粒的再分配,改善了加热过程中的热发电稳定性和热诱导的电稳定性的电加热能力。此外,掺入二氧化硅气凝胶增加冷却时间,提高与加热效率相关的储热能。因此,可以得出结论,二氧化硅气凝胶添加具有清晰的潜力,以提高CNT嵌入式电加热复合材料的电加热能力和热诱导的电稳定性。

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